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首页> 外文期刊>Physica, E. Low-dimensional systems & nanostructures >Signatures of Majorana bound state in an Aharonov-Bohm interferometer embedded with quantum dot
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Signatures of Majorana bound state in an Aharonov-Bohm interferometer embedded with quantum dot

机译:嵌入量子点的Aharonov-Bohm干涉仪中Majorana绑定状态的签名

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摘要

We consider a ring geometry with a quantum dot (QD) embedded in one of its arms, which is coupled symmetrically to two normal leads and threaded by Aharonov-Bohm (AB) flux phi.The QD is coupled to a topological nanowire. Using scattering matrix method, the differential conductance and current cross correlation are investigated. By varying the external magnetic field strength and the coupling strength between the QD and Majorana bound state (MBS), the zero-bias conductance peak (ZBCP) will split and oscillate due to the overlapping of the two MBSs. Due to the sum rule in a pair of well-separated MBSs, the total differential conductance at zero bias voltage is quantized to 2e(2)/h. The total differential conductance and the current cross correlation show the periodicity of pi with zero QD energy level and 2 pi with nonzero QD energy level.
机译:我们考虑具有嵌入其中一个臂中的量子点(QD)的环形几何形状,其对称地耦合到两个正常引线并被Aharonov-Bohm(AB)通量Phi螺纹。QD耦合到拓扑纳米线。 使用散射矩阵方法,研究了差分电导和电流交叉相关性。 通过改变QD和马太蚌之间的耦合强度(MBS)之间的外部磁场强度和耦合强度,由于两个MBSS的重叠,零偏置电导峰值(ZBCP)将分开和振荡。 由于一对分离的MBS中的总和规则,零偏置电压的总差分电导被量化为2E(2)/ h。 总差分电导和电流交叉相关示出了具有零QD能级的PI的周期性,具有非零QD能量水平的2 PI。

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